In this article, we extend our preceding studies on higher algebraic structures of (co)homology theories defined by a left bialgebroid (U, A). For a braided commutative Yetter–Drinfel’d algebra N, explicit expressions for the canonical Gerstenhaber algebra structure on Ext_U(A, N)are given. Similarly, if (U, A) is a left Hopf algebroid where A is an anti-Yetter–Drinfel’d module over U, it is shown that the cochain complex computing Cotor_U(A, N)defines a cyclic operad with multiplication and hence the groups CotorU_(A, N) form a Batalin–Vilkovisky algebra. In the second part of this article, Poisson structures and the Poisson bicomplex for bialgebroids are introduced, which simultaneously generalise, for example, classical Poisson as well as cyclic homology. In case the bialgebroid Uis commutative, a Poisson structure on Uleads to a Batalin–Vilkovisky algebra structure on Tor^U(A, A). As an illustration, we show how this generalises the classical Koszul bracket on differential forms, and conclude by indicating how classical Lie–Rinehart bialgebras (or, geometrically, Lie bialgebroids) arise from left bialgebroids.
Batalin-Vilkovisky algebra structures on (Co)Tor and poisson bialgebroids / Kowalzig, Niels. - In: JOURNAL OF PURE AND APPLIED ALGEBRA. - ISSN 0022-4049. - STAMPA. - 219:9(2015), pp. 3781-3822. [10.1016/j.jpaa.2014.12.022]
Batalin-Vilkovisky algebra structures on (Co)Tor and poisson bialgebroids
KOWALZIG, NIELS
2015
Abstract
In this article, we extend our preceding studies on higher algebraic structures of (co)homology theories defined by a left bialgebroid (U, A). For a braided commutative Yetter–Drinfel’d algebra N, explicit expressions for the canonical Gerstenhaber algebra structure on Ext_U(A, N)are given. Similarly, if (U, A) is a left Hopf algebroid where A is an anti-Yetter–Drinfel’d module over U, it is shown that the cochain complex computing Cotor_U(A, N)defines a cyclic operad with multiplication and hence the groups CotorU_(A, N) form a Batalin–Vilkovisky algebra. In the second part of this article, Poisson structures and the Poisson bicomplex for bialgebroids are introduced, which simultaneously generalise, for example, classical Poisson as well as cyclic homology. In case the bialgebroid Uis commutative, a Poisson structure on Uleads to a Batalin–Vilkovisky algebra structure on Tor^U(A, A). As an illustration, we show how this generalises the classical Koszul bracket on differential forms, and conclude by indicating how classical Lie–Rinehart bialgebras (or, geometrically, Lie bialgebroids) arise from left bialgebroids.File | Dimensione | Formato | |
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Kowalzig_Batalin-Vilkovisky-algebra_2015.pdf
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Note: http://dx.doi.org/10.1016/j.jpaa.2014.12.022
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